Imbault Alexander Luis, Gong Jianyu, Farnood Ramin
Department of Chemical Engineering and Applied Chemistry, University of Toronto Toronto Ontario M5S 3E5 Canada
School of Environmental Science and Engineering, Huazhong University of Science and Technology Wuhan China.
RSC Adv. 2020 Jan 30;10(9):4956-4968. doi: 10.1039/c9ra09434b. eCollection 2020 Jan 29.
In this paper, photocatalytic production of dihydroxyacetone (DHA) from glycerol in acetonitrile on TiO was investigated. HPLC-MS analysis showed that glycerol was converted to DHA, glyceraldehyde (GAD), glyceric acid and several other chemicals. Using acetonitrile as the reaction medium instead of water not only provided a more selective process for production of DHA but also increased the glycerol conversion. After 300 min, with 1 g L catalyst loading and 4 mM initial glycerol concentration, glycerol conversion and DHA selectivity were 96.8% and 17.8% in acetonitrile compared to 36.1% and 14.7% in water, respectively. The half-life of glycerol decreased by a factor of 6.2, from 467 min to 75 min, by changing the solvent from water to acetonitrile. Experiments using biodiesel-derived crude glycerol verified the effectiveness of the proposed process for the photocatalytic production of DHA from crude glycerol. A mechanism was proposed to explain the higher selectivity towards DHA over GAD in this process.
本文研究了在TiO上,甘油在乙腈中光催化生产二羟基丙酮(DHA)的过程。高效液相色谱-质谱分析表明,甘油被转化为DHA、甘油醛(GAD)、甘油酸和其他几种化学物质。使用乙腈代替水作为反应介质,不仅为DHA的生产提供了更具选择性的过程,还提高了甘油转化率。300分钟后,在催化剂负载量为1 g/L和初始甘油浓度为4 mM的情况下,乙腈中甘油转化率和DHA选择性分别为96.8%和17.8%,而水中分别为36.1%和14.7%。通过将溶剂从水改为乙腈,甘油的半衰期缩短了6.2倍,从467分钟降至75分钟。使用生物柴油衍生的粗甘油进行的实验验证了该工艺从粗甘油光催化生产DHA的有效性。提出了一种机制来解释该过程中对DHA比对GAD具有更高选择性的原因。